Published June 12, 1995
| Version public
Journal Article
Open
Exclusive Electron Scattering from Deuterium at High Momentum Transfer
Creators
- Bulten, H. J.1
- Anthony, P. L.2
- Arnold, R. G.3
- Arrington, J.4
- Beise, E. J.4
- Belz, E.4
- Van Bibber, K.2
- Bosted, P. E.3
- van den Brand, J. F. J.1
- Chapman, M. S.5
- Coulter, K. P.6
- Dietrich, F. S.2
- Ent, R.5
- Epstein, M.7
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Filippone, B. W.4
- Gao, H.4
- Gearhart, R. A.8
- Geesaman, D. F.6
- Hansen, J.-O.5
- Holt, R. J.6
- Jackson, H. E.6
- Jones, C. E.1
- Keppel, C. E.3
- Kinney, E.9
- Kuhn, S. E.10
- Lee, K.5
- Lorenzon, W.4
- Lung, A.3
- Makins, N. C. R.5
- Margaziotis, D, J.7
- McKeown, R. D.4
- Milner, R. G.5
- Mueller, B.4
- Napolitano, J.11
- Nelson, J.5
- O'Neill, T. G.4
- Papavassiliou, V.6
- Petratos, G. G.8
- Potterveld, D. H.6
- Rock, S. E.3
- Spengos, M.3
- Szalata, Z. M.3
- Tao, L. H.3
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White, J. L.3
- Zeidman, B.6
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1.
University of Wisconsin–Madison
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2.
Lawrence Livermore National Laboratory
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3.
American University
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4.
California Institute of Technology
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5.
Massachusetts Institute of Technology
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6.
Argonne National Laboratory
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7.
California State University, Long Beach
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8.
SLAC National Accelerator Laboratory
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9.
University of Colorado Boulder
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10.
Stanford University
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11.
Rensselaer Polytechnic Institute
Abstract
Cross sections are presented for the reaction 2H(e,e′p)n for momentum transfers in the range 1.2≤Q^2≤6.8 (GeV/c)^2 and for missing momenta from 0 to 250 MeV/c. The longitudinal-transverse interference structure function has been separated at Q^2 = 1.2 (GeV/c)^2. The observables are compared to calculations performed in nonrelativistic and relativistic frameworks. The data are best described by a fully relativistic calculation.
Additional Information
©1995 The American Physical Society. Received 4 November 1994. We are grateful to Professor H. Arenhövel and Professor J. Tjon for performing calculations on a dense grid of kinematics, covering our experimental acceptance. This work was supported in part by the Department of Energy under Contracts No. W-31-109-ENG-38 (Argonne), No. DE-FG02-86ER40269 (Colorado), No. W-2705-Eng-48 (LLNL), No. DE-AC02-76ER03069 (MIT), No. DE-AC03-76SF00515 (SLAC), No. DE-FG03-88ER40439 (Stanford), and by the National Science Foundation under Grants No. PHY-9014406 and No. PHY-9114958 (American), No. PHY-9115574 (Caltech), No. PHY-9101404 (CSLA), No. PHY-9208119 (RPI), and No. PHY-9316221 (Wisconsin). R.G.M. acknowledges the support of a Presidential Young Investigator Award from NSF. B.W.F. acknowledges the support of a Sloan Foundation Fellowship.Files
BULprl95.pdf
Additional details
Identifiers
- Eprint ID
- 11051
- Resolver ID
- CaltechAUTHORS:BULprl95
Dates
- Created
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2008-06-24Created from EPrint's datestamp field
- Updated
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2021-11-08Created from EPrint's last_modified field